Glasses frame hinge implanting all-in-one machine

By designing the guide rail module and air nozzle, the problems of high noise, slow feeding, and high cost of existing equipment have been solved, achieving efficient and low-noise hinge installation.

CN223718841UActive Publication Date: 2025-12-26ZHEJIANG SILE AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202423118272.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-12-26
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing eyeglass frame hinge installation equipment is noisy, slow in loading, and costly.

Method used

The guide rail module replaces the linear vibratory feeder, and the air nozzle replaces the cylinder assembly. The hinges are precisely installed by combining the gantry and the linear module.

Benefits of technology

It increased the feeding speed, reduced operating noise, and lowered production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glasses frame hinge implanting all-in-one machine which comprises a machine frame, a glasses frame feeding device, a hinge feeding device, a machining device, a working table and a discharging device are arranged on the machine frame, a clamp is arranged on the working table, the hinge feeding device comprises a base table, a storage plate, a feeding plate, a pushing guide rail and a plurality of air taps, the base table is installed on the machine frame, and the base table is installed on the machine frame. The material storage plate and the material pushing guide rail are arranged on the base table in parallel, at least two material storage guide grooves are formed in the material storage plate, at least two material feeding grooves are formed in the material feeding plate, a positioning baffle is arranged on the material feeding plate, a slidable material pushing part is arranged on the material pushing guide rail, a material pushing plate is arranged at the side end of the material pushing part, the air nozzle is installed on the material pushing plate, and the air nozzle is connected with an external air source. The guide rail module is adopted to replace a direct vibration feeder for feeding, the feeding speed can be increased, the working noise can be reduced, the air tap is adopted to replace an air cylinder set for feeding, and the equipment production cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glasses processing equipment technical field, concretely is a glasses frame hinge implantation integrated machine. BACKGROUND

[0002] In the production process of glasses frame, the hinge needs to be installed, when the existing glasses frame precision installation hinge, need first to the glasses frame hinge installation position carries out the milling groove processing, then picks up the hinge and installs in the corresponding slot of glasses frame. At present, most of the hinge feeding equipment on the market adopts the straight vibration feeder to convey the hinge to the specified point, and then positions the hinge below the picker through the cylinder group. This design has large working noise, slow feeding speed and high production cost. SUMMARY

[0003] The utility model discloses a glasses frame hinge implantation integrated machine to solve the problems in the above background.

[0004] To achieve the above object, the utility model provides the following technical scheme: a glasses frame hinge implantation integrated machine, comprising: a rack, the rack is provided with glasses frame feeding device, hinge feeding device, processing device, workbench and discharging device, the workbench is provided with clamp, the hinge feeding device includes base, storage plate, feeding plate, pusher guide rail and a plurality of air nozzles, the base is installed on the rack, the storage plate is parallelly arranged on the base with the pusher guide rail, at least two storage guide grooves are formed in the storage plate, at least two feeding grooves are formed in the feeding plate, the feeding groove is communicated with the storage guide groove, the positioning baffle is arranged on the feeding plate, the pusher guide rail is provided with the slidable pusher, the pusher side end is provided with the pusher plate, the pusher plate is perpendicular to the length direction of the storage plate, the air nozzle is installed on the feeding plate, the air inlet of the air nozzle faces the storage guide groove, and the air nozzle is connected with the external air source.

[0005] As preferred, the processing device includes a gantry, a first linear module, a second linear module, a punching spindle, an industrial camera, a third linear module, a fourth linear module and a mounting spindle, the gantry is provided with a first stage, a second stage and a third stage, the first linear module is installed on the upper end of the second stage, the second linear module is installed on the output end of the first linear module, the punching spindle and the industrial camera are installed on the output end of the second linear module, the third linear module is installed on the side end of the second stage, the fourth linear module is installed on the output end of the third linear module, and the mounting spindle is installed on the output end of the fourth linear module.

[0006] As preferred, the first stage side end is provided with a first linear guide rail, a plurality of first sliders are arranged on the first linear guide rail, and the first sliders are connected with the second linear module and the fourth linear module respectively.

[0007] As preferred, the third order upper end is provided with a second linear guide rail, a plurality of second sliders are arranged on the second linear guide rail, the second linear module and the fourth linear module are both provided with a connecting plate, and the second sliders are connected with the connecting plate.

[0008] As preferred, the spectacle frame feeding device comprises a shell, a bottom plate, a guide rod and a fifth linear module, the shell is installed on the rack, a feeding opening is formed on the side of the shell facing the workbench, the bottom plate is installed in the shell, the upper end surface of the bottom plate is flush with the lower end surface of the feeding opening, the guide rod is arranged on the bottom plate, the fifth linear module is installed at the lower end of the bottom plate, the driving end of the fifth linear module penetrates through the bottom plate, two ejection plates are arranged on the driving end of the fifth linear module, the ejection plates are located at the upper end of the bottom plate, and an ejection part is arranged on the ejection plate.

[0009] As preferred, a plurality of windows are arranged on the shell.

[0010] Compared with the prior art, the spectacle frame feeding device has the advantages that:

[0011] The guide rail module is adopted to replace the straight vibration feeder to feed, so that the feeding speed is improved, the working noise is reduced, the air nozzle is adopted to replace the air cylinder group to receive materials, and the production cost of the equipment is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a three-dimensional structure schematic view of the utility model;

[0013] Figure 2 It is a three-dimensional structure schematic view of another perspective of the utility model;

[0014] Figure 3 It is a hinge feeding device structure schematic view of the utility model;

[0015] Figure 4 It is a three-dimensional structure schematic view of the utility model Figure 3 It is an enlarged structure schematic view of position A in the utility model;

[0016] Figure 5 It is a processing device structure schematic view of the utility model;

[0017] Figure 6 It is a spectacle frame feeding device structure schematic view of the utility model;

[0018] Figure 7 It is a three-dimensional structure schematic view of the utility model Figure 6 It is an enlarged structure schematic view of position B in the utility model;

[0019] Figure 8 It is a spectacle frame feeding device structure schematic view of another perspective of the utility model;

[0020] As shown in the figure: rack - 1, glasses frame feeding device - 2, shell - 201, loading port - 2011, window - 2012, bottom plate - 202, guide rod - 203, fifth linear module - 204, ejection plate - 205, ejection part - 206, hinge feeding device - 3, base - 301, storage plate - 302, storage guide groove - 303, feeding plate - 304, feeding groove - 305, positioning baffle - 306, pushing guide rail - 307, pushing piece - 308, pushing plate - 309, air nozzle - 310, processing device - 4, gantry - 401, first linear module - 402, second linear module - 403, punching spindle - 404, industrial camera - 405, third linear module - 406, fourth linear module - 407, mounting spindle - 408, first linear guide rail - 409, first sliding block - 410, second linear guide rail - 411, second sliding block - 412, connecting plate - 413, discharging device - 5, clamp - 6. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0022] Please refer to Figures 1-8The utility model provides a kind of spectacle frame hinge implantation integrated machine technical scheme: a kind of spectacle frame hinge implantation integrated machine, comprising: rack 1, rack 1 is provided with spectacle frame feeding device 2, hinge feeding device 3, processing device 4, workbench and blanking device 5, workbench is provided with clamp 6, spectacle frame feeding device 2 is transported to spectacle frame on clamp 6, processing device 4 is processed on spectacle frame hole position, then pick up hinge on hinge feeding device 3 and be loaded into hole position, the spectacle frame of completion processing is discharged from blanking device 5, hinge feeding device 3 includes base 301, storage plate 302, feeding plate 304, pusher guide rail 307 and several air nozzles 310, base 301 is installed on rack 1, storage plate 302 is arranged in parallel with pusher guide rail 307 on base 301, at least two storage guide grooves 303 are provided on storage plate 302, at least two feeding grooves 305 are provided on feeding plate 304, feeding groove 305 is communicated with storage guide groove 303, positioning baffle 306 is provided on feeding plate 304, slidable pusher 308 is provided on pusher guide rail 307, pusher plate 309 is provided at the side end of pusher 308, pusher plate 309 is perpendicular to the length direction of storage plate 302, air nozzle 310 is installed on feeding plate 304, the gas inlet of air nozzle 310 faces storage guide groove 303, air nozzle 310 is connected with external gas source;

[0023] Storage guide groove 303 is arranged and stored with several hinges, pusher 308 drives pusher plate 309 to move and pushes the hinge in the multiple storage guide grooves 303 to feeding groove 305, when the hinge moves to be closer to feeding plate 304, pusher 308 stops moving, air nozzle 310 inhales the hinge closest to feeding plate 304 into feeding groove 305, positioning baffle 306 limits that feeding groove 305 can only enter a hinge, facilitate processing device 4 to pick up hinge, adopt guide rail module instead of straight vibration feeder feeding, can improve feeding speed, reduce working noise, adopt air nozzle 310 instead of cylinder group to receive material, reduce the equipment production cost.

[0024] In the embodiment, the processing device 4 comprises a gantry 401, a first linear module 402, a second linear module 403, a punching spindle 404, an industrial camera 405, a third linear module 406, a fourth linear module 407, and a mounting spindle 408. The gantry 401 is provided with a first stage, a second stage, and a third stage. The first linear module 402 is installed on the upper end of the second stage. The second linear module 403 is installed on the output end of the first linear module 402. The punching spindle 404 and the industrial camera 405 are installed on the output end of the second linear module 403. The third linear module 406 is installed on the side end of the second stage. The fourth linear module 407 is installed on the output end of the third linear module 406. The mounting spindle 408 is installed on the output end of the fourth linear module 407. During processing, the punching spindle 404 first processes the hole positions on both sides of the spectacle frame, and then the mounting spindle 408 picks up the hinges in the feeding groove 305 and embeds the hinges into the hole positions on both sides of the spectacle frame, respectively.

[0025] In the embodiment, the side end of the first stage is provided with a first linear guide rail 409. A plurality of first sliders 410 are arranged on the first linear guide rail 409. The first sliders 410 are connected with the second linear module 403 and the fourth linear module 407, respectively. The upper end of the third stage is provided with a second linear guide rail 411. A plurality of second sliders 412 are arranged on the second linear guide rail 411 and can slide. The second linear module 403 and the fourth linear module 407 are both provided with a connecting plate 413. The second sliders 412 are connected with the connecting plates 413. The stability of the second linear module and the fourth linear module during movement along the X-axis is improved, and the processing precision is improved.

[0026] In the embodiment, the spectacle frame feeding device 2 comprises an outer shell 201, a bottom plate 202, a guide rod 203, and a fifth linear module 204. The outer shell 201 is installed on the rack 1. A feeding port 2011 is formed on the side of the outer shell 201 facing the workbench. The bottom plate 202 is installed in the outer shell 201. The upper end surface of the bottom plate 202 is flush with the lower end surface of the feeding port 2011. The guide rod 203 is arranged on the bottom plate 202 and cooperates with the nose bridge of the spectacle frame. A storage space is formed between the guide rod 203 and the outer shell 201. The spectacle frames are stacked and stored in the storage space. The fifth linear module 204 is installed on the lower end of the bottom plate 202. The driving end of the fifth linear module 204 penetrates through the bottom plate 202. Two ejection plates 205 are arranged on the driving end of the fifth linear module 204. The fifth linear module 204 drives the two ejection plates 205 to move on the bottom plate 202. During feeding, the workbench moves the clamp 6 to the feeding port 2011. The fifth linear module 204 drives the two ejection plates 205 to move and eject the lowermost spectacle frame from the feeding port 2011. The clamp 6 catches the spectacle frame, and feeding is completed. The ejection plate 205 is located on the upper end of the bottom plate 202. An ejection portion 206 is arranged on the feeding member and is in the form of a long rod. The ejection portion 206 cooperates with the peg head of the spectacle frame.

[0027] In this embodiment, a plurality of windows 2012 are arranged on the shell 201 to facilitate observation of the remaining number of glasses frames in the storage space.

[0028] The contents not described in detail in the specification belong to the prior art known to the person skilled in the art.

[0029] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. An ophthalmic frame hinge implantation all-in-one machine, comprising: The rack (1) is provided with a spectacle frame feeding device (2), a hinge feeding device (3), a processing device (4), a workbench and a discharging device (5). The workbench is provided with a clamp (6). The hinge feeding device (3) comprises a base (301), a storage plate (302), a feeding plate (304), a pushing guide rail (307) and a plurality of air nozzles (310). The base (301) is installed on the rack (1). The storage plate (302) is arranged in parallel with the pushing guide rail (307) on the base (301). The storage plate (302) is provided with at least two storage guide grooves (303). The feeding plate (304) is provided with at least two feeding grooves (305). The feeding grooves (305) are communicated with the storage guide grooves (303). The feeding plate (304) is provided with a positioning baffle (306). The pushing guide rail (307) is provided with a slidable pushing piece (308). The pushing piece (308) is provided with a pushing plate (309) at the side end. The pushing plate (309) is perpendicular to the length direction of the storage plate (302). The air nozzles (310) are installed on the feeding plate (304). The air inlets of the air nozzles (310) face the storage guide grooves (303). The air nozzles (310) are connected with an external air source.

2. The eyeglass frame hinge implantation all-in-one machine according to claim 1, wherein, The processing device (4) comprises a gantry (401), a first linear module (402), a second linear module (403), a punching main shaft (404), an industrial camera (405), a third linear module (406), a fourth linear module (407) and a mounting main shaft (408). The gantry (401) is provided with a first stage, a second stage and a third stage. The first linear module (402) is installed on the upper end of the second stage. The second linear module (403) is installed on the output end of the first linear module (402). The punching main shaft (404) and the industrial camera (405) are installed on the output end of the second linear module (403). The third linear module (406) is installed on the side end of the second stage. The fourth linear module (407) is installed on the output end of the third linear module (406). The mounting main shaft (408) is installed on the output end of the fourth linear module (407).

3. The machine of claim 2, wherein, The side end of the first stage is provided with a first linear guide rail (409). A plurality of first sliders (410) are arranged on the first linear guide rail (409). The first sliders (410) are respectively connected with the second linear module (403) and the fourth linear module (407).

4. The machine of claim 3, wherein, The upper end of the third stage is provided with a second linear guide rail (411). A plurality of slidable second sliders (412) are arranged on the second linear guide rail (411). The second linear module (403) and the fourth linear module (407) are both provided with a connecting plate (413). The second sliders (412) are connected with the connecting plates (413).

5. The eyeglass frame hinge implant all-in-one machine according to claim 4, wherein, The spectacle frame feeding device (2) comprises a shell (201), a bottom plate (202), a guide rod (203) and a fifth linear module (204), the shell (201) is installed on the rack (1), one side of the shell (201) facing the workbench is provided with a feeding opening (2011), the bottom plate (202) is installed in the shell (201), the upper end surface of the bottom plate (202) is flush with the lower end surface of the feeding opening (2011), the guide rod (203) is arranged on the bottom plate (202), the fifth linear module (204) is installed at the lower end of the bottom plate (202), the driving end of the fifth linear module (204) penetrates through the bottom plate (202), two ejection plates (205) are arranged on the driving end of the fifth linear module (204), the ejection plates (205) are located on the upper end of the bottom plate (202), and the ejection plates (205) are provided with ejection parts (206).

6. The eyeglass frame hinge implant all-in-one machine according to claim 5, wherein, The shell (201) is provided with a plurality of windows (2012).